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Biomedical subjects

Kazuo Matsuura

Publications and source records attributed to Kazuo Matsuura.

11 recordsLinked to original sources

Trastuzumab deruxtecan rechallenge in HER2-positive metastatic breast cancer: EN-SEMBLE.

BACKGROUND: Trastuzumab deruxtecan (T-DXd) is a key treatment for HER2-positive metastatic breast cancer (mBC); however, data on T-DXd rechallenge remain limited. PATIENTS AND METHODS: This post-hoc subgroup analysis evaluated T-DXd rechallenge in patients with HER2-positive mBC using data from EN-SEMBLE, a nationwide cohort study in Japan (N = 664). RESULTS: Twenty-six patients were included. Median real-world progression-free survival, real-world time to treatment failure, and overall survival were 6.5, 4.9, and 14.2 months, respectively. The objective response rate was 27%. Patients who discontinued initial T-DXd without progressive disease had numerically longer real-world progression-free survival. No interstitial lung disease occurred during rechallenge. CONCLUSION: T-DXd rechallenge may have clinical activity in selected patients with HER2-positive mBC. CLINICAL TRIAL REGISTRATION NUMBER: jRCT1030220506.

Humans↗

In situ x-ray diffraction measurements of the capillary fountain jet produced via ultrasonic atomization.

In situ x-ray diffraction measurements were carried out for investigating the liquid structure in the ultrasonic fountain jet to consider the mechanism of the "ultrasonic ethanol separation" reported by Sato et al. [J. Chem. Phys. 114, 2382 (2001)]. For pure liquids (water and ethanol), it was found that the high frequency ultrasound does not affect the liquid structure microscopically. For the 20 mol % ethanol-water mixture, the estimated ethanol mole fraction in the ultrasonic fountain jet by using the position of the main maximum in the x-ray diffraction profile coincided with that in the reservoir. This result suggests that the ethanol separation is not caused by any distorted liquid structure under the ultrasound irradiation and occurs when or after the generation of the liquid droplet mist.

Journal Article↗

Maturation of dendritic cells and T-cell responses in sentinel lymph nodes from patients with breast carcinoma.

BACKGROUND: Methods for identifying sentinel lymph nodes (SNs) and their clinical significance have been established. Recent advances in molecular immunology have enabled the analysis of precise immune responses. The objective of the current study was to clarify the dendritic cell (DC) maturation, T-helper type 1 (Th-1) and Th-2 responses, and regulatory T-cell responses of SNs in patients with breast carcinoma. METHODS: SNs and non-SNs were identified by radioguided and blue dye-guided methods in 70 consecutive patients with clinically lymph node negative (N0) breast carcinoma. Lymphocytes were collected from SNs and non-SNs and were subjected to flow cytometric analysis (FCM) using antibodies of CD83-fluorescein isothiocyanate (FITC), CD80-phycoerythrin (PE), CD86-PE, CD40-PE, human leukemic D-related antigen (HLA-DR)-FITC, CD4-FITC, and CD25-PE. Total RNA was extracted from SNs and non-SNs, and the expression of CD83, interleukin 12p40 (IL-12p40), interferon gamma (IFN-gamma), IL-4, IL-10, and Foxp3 was evaluated by using quantitative real-time reverse transcriptase-polymerase chain reaction (RT-PCR) analysis. The immunologic status of SNs was analyzed further with regard to micrometastases, which were identified as negative microscopically but positive according to an RT-PCR analysis that was specific for mammaglobin. RESULTS: SNs were detectable in 70 of 71 consecutive patients (98.6%) with clinically N0 breast carcinoma. Fourteen of 70 patients (20.0%) had positive metastasis in SNs. When SNs were compared with non-SNs in 56 metastasis-negative patients, FCM revealed that HLA-DR-positive, CD80-positive, CD86-positive, and CD40-positive cell populations were decreased significantly in SNs. RT-PCR analysis demonstrated that, among 44 patients with metastasis-negative SNs, the expression levels of CD83 and IFN-gamma mRNA were significantly lower in SNs compared with non-SNs. Immunologic parameters also were compared between 44 metastasis-negative SNs and 14 metastasis-positive SNs. The metastasis-positive SNs demonstrated significantly higher expression of CD83, IL-12p40, IFN-gamma, IL-10, and Foxp3 mRNA than the metastasis-negative SNs. Correction of micrometastasis detected by mammaglobin enhanced these differences consistently. CONCLUSIONS: In patients with breast carcinoma, cellular immune responses, from DC maturation to Th-1 responses, appeared to be less active in SNs compared with non-SNs before metastasis developed. Once metastasis was established in SNs, DC maturation was triggered and was followed by the up-regulation of Th-1 responses, which may reflect antigen-specific immune responses in SNs. Unlike DC maturation and Th-1 responses after metastasis in SNs, up-regulation of Th-2 and regulatory T-cell responses developed in parallel.

Adult↗

Postoperative immunosuppression cascade and immunotherapy using lymphokine-activated killer cells for patients with esophageal cancer: possible application for compensatory anti-inflammatory response syndrome.

Immunological parameters were measured in order to elucidate a postoperative immunosuppression mechanism in transthoracic esophagectomy for patients with esophageal cancer. Moreover, lymphokine-activated killer (LAK) cells were transferred just after the surgery to overcome the postoperative immunosuppression. Fifteen consecutive patients who underwent transthoracic esophagectomy were subjected to the postoperative measurement of immunological parameters. Ten patients who underwent open cholecystectomy served as controls. Heparinized venous blood was obtained pre- and postoperatively, and serum levels of cytokines IL-6 and IL-10 and immunosuppressive acidic protein (IAP) were measured. Peripheral blood lymphocytes were harvested and analyzed by flow cytometry for phenotype detection and by a mixed lymphocyte reaction for detecting concanavalin (Con)-A-induced or -non-induced suppressor activity. Another 29 consecutive patients who underwent transthoracic esophagectomy were randomly enrolled in a postoperative immunotherapy trial either with or without lymphokine-activated killer cells. It was found that, in the esophagectomy group, IL-6 and IL-10 increased postoperatively and peaked on day 1, followed by an increase in IAP, peaked again on day 4, with a profound decrease in helper and cytotoxic T-cell subsets, followed by increases in Con-A-induced (on day 7 or later) and spontaneous (on day 10) suppressor activities. These changes were minimal in the cholecystectomy group. LAK cell transfer restored the postoperative decrease in the helper and cytotoxic T-cell population, and there was a trend of reduction for postoperative remote infection such as pneumonia and surgical site infection in the LAK therapy group. Taken together, we would like to propose the existence of a postoperative immunosuppression cascade consisting of increases in cytokines and immunosuppressive proteins, decreases in helper and cytotoxic T-cell populations, and the development of suppressor T-cell activities in surgery for esophageal cancer. Postoperative adoptive transfer of LAK cells may be a novel clinical application in surgery for esophageal cancer as a means of treating this postoperative immunosuppressive condition that may be identical to the status of compensatory anti-inflammatory response syndrome (CARS).

Aged↗

Adoptive immunotherapy using autologous lymphocytes sensitized with HLA class I-matched allogeneic tumor cells.

A 29-year-old female breast cancer patient with multiple bone metastases (HLA-A2) was treated with adoptive transfer using autologous peripheral blood mononuclear cells (PBMCs) activated with the HLA-A2-matched allogeneic GC022588 gastric cancer cell line and interleukin-2 plus an immobilized anti-CD3 antibody culture system. The relief of bone pain in parallel with a decrease of serum carcinoembryonic antigen levels was obtained just after the administration of GC022588-activated effector lymphocytes, and a good quality of life was accomplished for 4 months. The GC022588-activated effector lymphocytes included 44% CD4+, 77% CD8+, and 26% CD4+CD8+ phenotypes, and expressed 25% killing activity against GC022588 stimulator cells at an E/T ratio of 50:1. T cell receptor (TCR) usage analysis for the effector cells showed oligoclonal expression of TCRVbeta1, 3, 9, and 11, especially TCRVbeta5.2, 12, 13.1 and 17, and their killing activity was significantly inhibited in the presence of anti-TCRalphabeta antibody and anti-TCRVbeta12 antibody. SSCP analysis revealed clonotypic bands of TCRVbeta12. These results suggest that shared antigens exist between breast and gastric adenocarcinomas. Allogeneic tumor cells can stimulate PBMCs to generate effector cells with selected TCRCDR3 usages that recognize tumor antigens. These effector lymphocytes may be good candidates for the adoptive immunotherapy of cancer.

CD3 Complex↗

Polymerization of ethylene molecules chemisorbed on CrOH+ as a model system of chromium-containing catalyst.

The reaction process of the production of CrOH(C2H4)2(+) was studied in connection with the ethylene polymerization on a silica-supported chromium oxide catalyst (the Phillips catalyst). Cluster ions CrOH(C2H4)2(+) and CrOH(C4H8)+ were produced by the reactions of CrOH+ with C2H4 (ethylene) and C4H8 (1-butene), respectively, and were allowed to collide with a Xe atom under single collision conditions. The cross section for dissociation of each parent cluster ion was measured as a function of the collision energy (collision-induced dissociation, or CID). It was found that (i) the CID cross section for the production of CrOH+ from CrOH(C2H4)2(+) increases sharply at the threshold energy of 3.16 +/- 0.22 eV and (ii) the CID cross section for the production of CrOH+ and C4H8 from CrOH(C4H8)+ also increases sharply at the threshold energy of 3.26 +/- 0.21 eV. In comparison with the calculations based on a B3LYP hybrid density functional method, it is concluded that two ethylene molecules in CrOH(C2H4)2(+) are polymerized to become 1-butene. The calculation also shows that the dimerization proceeds via CrOH(C2H4)+ (ethylene complex) and CrOH(C2H4)2(+) (ethylene complex), in which the ethylene molecules bind with CrOH+ through a pi-bonding.

Catalysis↗

[Surgical stress].

Explore the source record for details and available documents.

Arachidonic Acids↗

[Therapeutic potential of antisense (AS) Bcl-2 as a chemosensitizer for patients with gastric and breast carcinoma].

BACKGROUND AND OBJECTIVE: Bcl-2 confers resistance to apoptosis resulting in reduction of the effectiveness of chemotherapy. We examined the effect of antisense (AS) Bcl-2 in combination with anticancer drug for targeting therapy against Bcl-2 in gastric and breast cancer cells. MATERIALS AND METHODS: One human gastric cancer cell line (MKN-45) and three breast cancer cell lines (BT-474, ZR-75-1 and MDA-MB-231) were examined. The effects of antisense Bcl-2 phosphorothioate oligonucleotides (AS ODNs: 18 mer) on chemosensitivity were tested in vitro and in vivo. Chemosensitivity was evaluated by the MTT assay, and the antitumor effect assessed in vivo by the success of xenograft transplantation into nude mice. RESULTS: Treatment with AS Bcl-2 ODNs resulted in sequence-specific reduction in protein expression, which was compared to controls. Treatment of MKN-45 cells with AS Bcl-2 increased sensitivity to adriamycin (ADM), cisplatin (CDDP), and paclitaxel (PTX) in vitro and in vivo. Similarly, treatment of BT-474, ZR-75-1, and MDA-MB-231 cells with AS Bcl-2 increased chemosensitivity to ADM, mitomycin C (MMC), PTX, and docetaxel (DOC). This occurred in the setting of increased Bax and cleaved poly (ADP-ribose) polymerase, as well as decreased Bcl-2 and pAkt. AS Bcl-2 ODNs induced splenomegaly in association with increased serum IL-12, expression of CD80, CD83, CD86, and CD27, which was attenuated by methylation of the CpG-motifs of AS Bcl-2, suggesting the involvement of immunomodulatory effect of AS Bcl-2 through pDC and B cell although methylated CpG-failed to negate the increased antitumor effect of AS Bcl-2. CONCLUSION: Targeted therapy against Bcl-2 protein using AS ODNs might enhance the effects of chemotherapy in patients with gastric and breast cancer.

Animals↗

The spleen plays an immunosuppressive role in patients with gastric cancer: involvement of CD62L+ cells and TGF-beta.

CD62L is the human homologue of the murine lymphocyte homing receptor, mel-14. We investigated CD62L + cells in the spleen from patients with gastric cancer. Flow cytometric analysis revealed that CD62L + cells were decreased in the peripheral blood, but inversely increased in the spleen in parallel with disease progression in gastric cancer patients. The increased CD62L+ cells resided in the CD4+ suppressor-inducer phenotype, and the removal of CD62L+ cells from spleen cells resulted in a decrease of concanavalin-A-induced suppressor activity in vitro in one-way allogeneic mixed lymphocyte reaction. The CD62L+ cells included CD4+CD25+ regulatory T cells. The culture supernatant of CD62L + cells showed TGF-beta activity that permitted anchorage-independent growth of normal rat kidney (NRK) cells in a soft agar. TGF-beta activity was more significantly detectable in the splenic vein than in the peripheral blood, and TGF-beta mRNA was detectable in the spleen from advanced gastric cancer patients. These results suggest that CD62L+ cells migrate into the spleen with disease progression of gastric cancer and serve as suppressor-inducer cells with TGF-beta production to induce regulatory T cells, contributing to disease-associated immunosuppression in advanced gastric cancer patients.

Aged↗

HER2-specific cytotoxic activity of lymphokine-activated killer cells in the presence of trastuzumab.

We investigated whether trastuzumab, a humanized anti-HER2 monoclonal antibody, could induce HER2-specific cytotoxic activity on lymphokine-activated killer (LAK) cells. Trastuzumab alone was not toxic to the HER2-positive breast cancer cell lines MDA-MB453 and ZR75-1, nor to the HER2-negative breast cancer cell lines MDA-MB468 and MCF-7. LAK cells, which were activated with 1000 U/ml IL-2 for 4 days (4-day LAK), showed cytotoxic activity against the MDA-MB453, ZR75-1 and MCF-7 cells, but not against MDA-MB468 cells. LAK cell cytotoxic activity against the HER2-positive breast cancer cell lines MDA-MB453 and ZR75-1 was significantly augmented in the presence of 10 nM trastuzumab, but that against the HER2-negative breast cancer cell lines MDA-MB468 and MCF-7 was not. The cytotoxic activity of LAK cells plus trastuzumab against the MDA-MB453 cells was significantly inhibited by the addition of cold MDA-MB453 cells or cold ZR75-1 cells, but not by addition of cold MDA-MB468 cells. Twenty-nine percent of the 4-day LAK cells were CD16+, and the cytotoxicity of LAK cells plus trastuzumab was abrogated with the anti-CD16 antibody treatment of the LAK cells in the cytotoxicity assay. Only 7% of the 10-day LAK cells were CD16+, and the 10-day LAK cells failed to exhibit cytotoxicity even with trastuzumab. These results suggest that HER2-specific cytotoxic activity, which is mediated by an antibody-dependent cellular cytotoxicity (ADCC) mechanism, can be induced on LAK cells by the addition of trastuzumab.

Antibodies, Monoclonal↗

Feasibility study of adoptive immunotherapy for metastatic lung tumors using peptide-pulsed dendritic cell-activated killer (PDAK) cells.

We have established a novel culture system to generate effector lymphocytes designated as peptide-pulsed dendritic cell-activated killer (PDAK) cells using cultured dendritic cells (DCs), synthetic peptide, peripheral blood lymphocytes, and interleukin-2 plus immobilized anti-CD3 antibody. A feasibility study of an adoptive immunotherapy trial using PDAK cells was conducted on HLA-A2 and HLA-A24 cancer patients with antigen-positive lung metastasis that was defined by serological analysis or PCR analysis. Eleven patients with lung metastasis participated in the study: 6 with colorectal cancer, 2 with pancreatic cancer, 1 each with breast and lung cancer, and 1 with melanoma. The patients received either Muc-1, CEA, gpl00, Her-2 or SART-3-PDAK cells generated in vitro, intravenously in combination with 350,000 U IL-2 weekly for 9 weeks, together with a planned dose-escalation schedule of three transfers each of 1 x 10(7), 3 x 10(7) and 1 x 10(8) PDAK cells/kg for 6 patients, and with a uniform dose of 3 x 10(7) PDAK cells/kg for the remaining 5 patients. Peptide/HLA-specific cytotoxic activity and TCRVbeta gene usage of PDAK cells were analyzed. All transfers of PDAK cells, which showed peptide/HLA-specific lysis, were well-tolerated in all patients, and adverse effects (elevation of transaminase, fever, and headache) were observed primarily at grade 1, but in no case greater than grade 2. The generation of sufficient cells to treat the patients with 3 x 10(7) PDAK cells/kg was feasible using our culture system, but we were able to generate and administer the dose of 1 x 10(8) PDAK cells/kg in only one patient. One partial response (PR) of lung metastasis occurred in a pancreatic cancer patient who received 3 x 10(7) Muc-1-PDAK cells/kg. The cytolytic units of PDAK cells in this patient appeared to be substantially higher compared to those in PD patients. TCR gene usage analysis on PDAK cells revealed preferential usage of TCRVbeta segments. These results suggest that adoptive immunotherapy using PDAK cells for cancer patients with antigen-positive lung metastasis is safe and feasible, and tumor response should be examined in a future clinical trial

Adult↗